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SciCrunch Registry is a curated repository of scientific resources, with a focus on biomedical resources, including tools, databases, and core facilities - visit SciCrunch to register your resource.
http://sourceforge.net/projects/isdtool/files/ISDTool-2.0/
Software that implements a computational model for predicting immunosuppressive domains (ISDs). The software could be used to identify typical ISDs in retroviruses including HERV, HTLV, HIV, STLV, SIV and MLV.
Proper citation: ISDTool (RRID:SCR_012125) Copy
http://sourceforge.net/projects/ngopt/
Software that produces high quality microbial genome assemblies on a laptop computer without any parameter tuning. A5-miseq does this by automating the process of adapter trimming, quality filtering, error correction, contig and scaffold generation, and detection of misassemblies. Unlike the original A5 pipeline, A5-miseq can use long reads from the Illumina MiSeq, use read pairing information during contig generation, and includes several improvements to read trimming.
Proper citation: A5-miseq (RRID:SCR_012148) Copy
http://sourceforge.net/projects/ec2kegg/
A perl-based package to perform comparative analysis of metabolic pathways between two organisms.
Proper citation: EC2KEGG (RRID:SCR_012127) Copy
http://sourceforge.net/projects/cnvcapseq/
Software for accurate and sensitive CNV discovery and genotyping in long-range targeted resequencing.
Proper citation: cnvCapSeq (RRID:SCR_012126) Copy
http://sourceforge.net/projects/ealps/
Software that uses the genotype data in conjunction with the pooled sequence data in order to accurately estimate the proportions of the samples in the pool, even in cases where not all individuals in the pool were genotyped (eALPS-LD).
Proper citation: eALPS (RRID:SCR_012130) Copy
http://sourceforge.net/projects/plek/
An alignment-free software tool which uses a computational pipeline based on an improved k-mer scheme and a support vector machine (SVM) algorithm to distinguish lncRNAs from messenger RNAs (mRNAs), in the absence of genomic sequences or annotations. It is especially suitable for PacBio or 454 sequencing data and large-scale transcriptome data.
Proper citation: PLEK (RRID:SCR_012132) Copy
http://sourceforge.net/projects/ldx/
A computational software tool for estimating linkage disequilibrium (LD) from pooled resequencing data.
Proper citation: LDx (RRID:SCR_012131) Copy
http://pprospector.sourceforge.net/
A pipeline of software programs to design and analyze PCR primers. It is built in Python using the open-source PyCogent toolkit.
Proper citation: PrimerProspector (RRID:SCR_012136) Copy
http://musite.sourceforge.net/
A Java-based standalone application for predicting both general and kinase-specific protein phosphorylation sites.
Proper citation: Musite (RRID:SCR_012141) Copy
http://sourceforge.net/projects/phosphosite/
A bioinformatical software tool for analyzing (quantitative) phosphoproteome datasets. The program retrieves kinase-substrate predictions from NetworKIN and contains various statistical modules for futher analysis.
Proper citation: PhosphoSiteAnalyzer (RRID:SCR_012142) Copy
http://sourceforge.net/projects/cnv/
Software for a web-enabled platform for analyzing genome variation such as copy number variation (CNV).
Proper citation: CNV Workshop (RRID:SCR_012635) Copy
http://biolemmatizer.sourceforge.net/
A domain-specific lemmatization software tool for the morphological analysis of biomedical literature.
Proper citation: BioLemmatizer (RRID:SCR_000117) Copy
http://soap.genomics.org.cn/soapfuse.html
THIS RESOURCE IS NO LONGER IN SERVICE.Documented on August 23,2022. An open source tool developed for genome-wide detection of fusion transcripts from human being paired-end RNA-Seq data. This tool is a part of a larger set of tools to efficiently align oligonucleotides onto reference sequences .
Proper citation: SOAPfuse (RRID:SCR_000078) Copy
A generic format for DNA sequence data. The primary motivation for creating SRF has been to enable a single format capable of storing data generated by any DNA sequencing technology.
Proper citation: Sequence Read Format (RRID:SCR_000132) Copy
http://sourceforge.net/projects/exomesuite/
THIS RESOURCE IS NO LONGER IN SERVICE. Documented on July 31,2025. A software application designed to analyze variant call files from next generation sequencing data to identify variants causing disease.
Proper citation: exomeSuite (RRID:SCR_000129) Copy
https://github.com/lskatz/cg-pipeline
A software tool for assembling genome sequence data and running feature prediction and annotation tools on the assembly.
Proper citation: CG-Pipeline (RRID:SCR_000047) Copy
http://sourceforge.net/projects/rnaseqvariantbl/
Open source software tool that simulates experimental RNA-seq and DNA whole exome sequences derived from reference genome, aligns these sequences by custom parameters, detects variants and outputs blacklist of positions and alleles caused by mismapping. Used to characterize mappability of RNA-Seq reads and create blacklist of genomic positions of mismapped reads. This blacklist is used to filter potential false positives from variant or RNA editing calls.
Proper citation: BlackOPs (RRID:SCR_000032) Copy
http://sourceforge.net/projects/batman-seq/
A fast BWT-based short reads mapping tools which uses additional statistical method to model error profile of the sequencing experiment.
Proper citation: Batman-Seq (RRID:SCR_000048) Copy
http://bamview.sourceforge.net/
A free interactive display of read alignments in BAM data files that can be launched with Java Web Start or downloaded. This interactive Java application for visualizing the large amounts of data stored for sequence reads which are aligned against a reference genome sequence can be used in a number of contexts including SNP calling and structural annotation. It has been integrated into Artemis so that the reads can be viewed in the context of the nucleotide sequence and genomic features. The source code is available as part of the Artemis code which can be downloaded from GitHub.
Proper citation: BamView (RRID:SCR_004207) Copy
http://alchemy.sourceforge.net/
ALCHEMY is a genotype calling algorithm for Affymetrix and Illumina products which is not based on clustering methods. Features include explicit handling of reduced heterozygosity due to inbreeding and accurate results with small sample sizes. ALCHEMY is a method for automated calling of diploid genotypes from raw intensity data produced by various high-throughput multiplexed SNP genotyping methods. It has been developed for and tested on Affymetrix GeneChip Arrays, Illumina GoldenGate, and Illumina Infinium based assays. Primary motivations for ALCHEMY''s development was the lack of available genotype calling methods which can perform well in the absence of heterozygous samples (due to panels of inbred lines being genotyped) or provide accurate calls with small sample batches. ALCHEMY differs from other genotype calling methods in that genotype inference is based on a parametric Bayesian model of the raw intensity data rather than a generalized clustering approach and the model incorporates population genetic principles such as Hardy-Weinberg equilibrium adjusted for inbreeding levels. ALCHEMY can simultaneously estimate individual sample inbreeding coefficients from the data and use them to improve statistical inference of diploid genotypes at individual SNPs. The main documentation for ALCHEMY is maintained on the sourceforge-hosted MediaWiki system. Features * Population genetic model based SNP genotype calling * Simultaneous estimation of per-sample inbreeding coefficients, allele frequencies, and genotypes * Bayesian model provides posterior probabilities of genotype correctness as quality measures * Growing number of scripts and supporting programs for validation of genotypes against control data and output reformating needs * Multithreaded program for parallel execution on multi-CPU/core systems * Non-clustering based methods can handle small sample sets for empirical optimization of sample preparation techniques and accurate calling of SNPs missing genotype classes ALCHEMY is written in C and developed on the GNU/Linux platform. It should compile on any current GNU/Linux distribution with the development packages for the GNU Scientific Library (gsl) and other development packages for standard system libraries. It may also compile and run on Mac OS X if gsl is installed.
Proper citation: ALCHEMY (RRID:SCR_005761) Copy
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